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FIGURE 3 in Phylogenetic relationships of Malesian Lady Ferns (Athyrium) provide insight into long-standing species complexes
FIGURE 3. Selected Javan species of Athyrium showing variations in adaxial setae indicated by arrows. A. Athyrium nigripes with setae present upon rachises, costae, costules and ultimate segment lobes. Arrows point to setae on ultimate segment lobes. B. Athyrium nitidulum with setae upon costules. C. Athyrium erythropodum with setae present only upon pinna costae.
FIGURE 6 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE 6. Live individual of Oceanites barrosi sp. nov. captured by Rodrigo Barros in Río Blanco, Los Andes province, Valparaíso Region, Chile (latitude 32°54'S, longitude 70°18'W, elevation 1,400 m), on 9 January 2022.
FIGURE 5 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE 5. Type specimen of O. barrosi, specimen no. LACM 25182, Natural History Museum of Los Angeles County USA, preserved as a study skin: adult female, collected by Rafael Barros Valenzuela in Río Blanco, Los Andes province, Valparaíso Region, Chile (latitude 32°54'32.06"S, longitude 70°18'15.30"W, elevation 1,402 m), on 7 April 1924.
FIGURE 4 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE 4. Distribution of average scores between PC1 and PC2 axes of morphological variation between species/subspecies of Oceanites genera. Ellipses represent 75% of the variation.
FIGURE 1 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE 1. Phylogenetic hypotheses of the genus Oceanites in previous treatments compared with this work. a) Morphological classification suggested by Clements et al. (2023) and Remsen et al. (2023). Remsen et al. (2023) only consider species, not subspecies. b) Morphological classification suggested by Howell & Zufelt (2019). c) Bayesian phylogenetic hypothesis of Oceanites genus presented in the results of this study, based on the maximum credibility tree estimated from Cytb sequences. Colors represent the similarities between taxonomic proposals.
FIGURE 2 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE 2. Phylogenetic hypothesis of the genus Oceanites based on BEAST from Cytb gene. Numbers on nodes are posterior probability values from the Bayesian analysis. Outgroups are not shown. Inset illustration Oceanites pincoyae from Handbook of the Birds of the World.
FIGURE S6 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE S6. Side view of live individuals of Oceanites barrosi sp. nov. captured by Rodrigo Barros in Río Blanco, Los Andes province, Valparaíso Region, Chile (latitude 32°54'S, longitude 70°18'W, elevation 1,400 m), on 9 January 2022. The number in the photo identifies the captured specimen
FIGURE S5 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE S5. Ventral view of live individuals of Oceanites barrosi sp. nov. captured by Rodrigo Barros in Río Blanco, Los Andes province, Valparaíso Region, Chile (latitude 32°54'S, longitude 70°18'W, elevation 1,400 m), on 9 January 2022. The number in the photo identifies the captured specimen.
FIGURE S4 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE S4. Wing views of live individuals of Oceanites barrosi sp. nov. captured by Rodrigo Barros in Río Blanco, Los Andes province, Valparaíso Region, Chile (latitude 32°54'S, longitude 70°18'W, elevation 1,400 m), on 9 January 2022. The number in the photo identifies the captured specimen
FIGURE S1 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE S1. Map with the sampling localities (excluding North America) for the genus Oceanites included in this study. Colored polygons indicate the approximate breeding areas of each taxon.
FIGURE S3 in Resolving the conflictive phylogenetic relationships of Oceanites (Oceanitidae: Procellariiformes) with the description of a new species
FIGURE S3. Partition plot based on linear discriminant function analysis of morphological data of the genus Oceanites.
FIGURE 4 in Phylogenetic Relationships Of The Genus Sibynophis (Serpentes: Colubroidea)
FIGURE 4: Mandible. A: Medial view of Sibynophis chinensis AMNH 34534; B: Medial view of Scaphiodontophis annulatus KU 191073; C: Medial view of Liophidium rhodogaster UMMZ 209427. Abbreviations: an = angular; cp = compound bone; d = dentary; sp = splenial. Scale bar = 2 mm.
FIGURE 3 in Phylogenetic Relationships Of The Genus Sibynophis (Serpentes: Colubroidea)
FIGURE 3: Hemipenis. A: asulcate view of Sibynophis chinensis AMNH 34102; B: sulcate view of Sibynophis chinensis AMNH 34102; C: asulcate view of Scaphiodontophis annulatus KU 191073; D: sulcate view of Scaphiodontophis annulatus KU 191073; E: asulcate view of Liophidium rhodogaster UMMZ 209424; F: sulcate view of Liophidium rhodogaster UMMZ 209424. Scale bar = 2 mm.
FIGURE 2 in Phylogenetic Relationships Of The Genus Sibynophis (Serpentes: Colubroidea)
FIGURE 2: Palatomaxillary arch. A: Dorsal view of Sibynophis chinensis AMNH 34534; B: Ventral view of Sibynophis chinensis AMNH 34534; C: Dorsal view of Scaphiodontophis annulatus KU 191073; D: Ventral view of Scaphiodontophis annulatus KU 191073; E: Dorsal view of Liophidium rhodogaster UMMZ 209427; F: Ventral view of Liophidium rhodogaster UMMZ 209427. Abbreviations: ept = ectopterygoid; mx = maxilla; pal = palatine; pt = pterygoid. Scale bar = 2 mm.
FIGURE 1 in Phylogenetic Relationships Of The Genus Sibynophis (Serpentes: Colubroidea)
FIGURE 1: Summary tree showing the major clades of Caenophidia as recovered in the maximum likelihood analysis of Pyron et al.'s (2011) data set with Sibynophis sequences added (full topology in Appendix S1). Taxon names in bold indicate high-level taxa (higher than family). Numbers near nodes indicate bootstrap values for unnamed clades. Numbers in parenthesis after a taxon name indicate bootstrap values for that clade.
FIGURE 6. T in Molecular phylogenetic and historical biogeographical relationships of Laudakia (Squamata: Agamidae) and intraspecific differentiation of L. stoliczkana inferred from mitochondrial DNA sequences
FIGURE 6. T-test results for morphological indicators. (F = females, M = males, N = northern Xinjiang, S = south Xinjiang)
FIGURE 5 in Molecular phylogenetic and historical biogeographical relationships of Laudakia (Squamata: Agamidae) and intraspecific differentiation of L. stoliczkana inferred from mitochondrial DNA sequences
FIGURE 5. The morphology and tail of Laudakia stoliczkana subspecies. (A & a: L. s. altaica; B & b: L. s. stoliczkana)
FIGURE 4 in Molecular phylogenetic and historical biogeographical relationships of Laudakia (Squamata: Agamidae) and intraspecific differentiation of L. stoliczkana inferred from mitochondrial DNA sequences
FIGURE 4. The estimation of divergence time for Laudakia. (Note: Values are estimated divergence times, and the blue bars are 95% confidence intervals HPD)
FIGURE 3 in Molecular phylogenetic and historical biogeographical relationships of Laudakia (Squamata: Agamidae) and intraspecific differentiation of L. stoliczkana inferred from mitochondrial DNA sequences
FIGURE 3. Bayesian phylogenetic trees of Laudakia species on tandem sequences (CO1 and 16S). (note: the values of nodes near is BPP/BS).
FIGURE 2 in Molecular phylogenetic and historical biogeographical relationships of Laudakia (Squamata: Agamidae) and intraspecific differentiation of L. stoliczkana inferred from mitochondrial DNA sequences
FIGURE 2. Bayesian phylogenetic trees of Laudakia on the sequenced of COI. (note: the values of nodes near is BPP/BS).
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OpenNeuro
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